Support plate glass smelting device
By introducing stirring components and stirring rods into the glass melting device, the problems of uneven stirring and poor bubble discharge during the glass melting process were solved, achieving uniformity of molten glass and effective bubble discharge, thereby improving the quality of glass products and production efficiency.
Patent Information
- Application Number
- CN202423084274.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-13
- Publication Date
- 2025-11-28
- Estimated Expiration
- 2034-12-13
AI Technical Summary
When existing glass melting equipment is in use, during the melting process, the volatile components in the glass melting equipment tend to volatilize severely due to high temperatures. During the glass melting process, the uneven stirring of the glass melting equipment makes it difficult to separate the volatile components into distinct zones, which in turn leads to the release of bubbles from the glass melt, hindering the formation of bubbles and making the gas unstable, thus affecting the quality of glass processing.
A glass melting device for carrier plates was designed, comprising a base plate, a heating shell, a heating rod, a tank, a stirring assembly, and a stirring rod. The stirring assembly and stirring rod are used to stir the molten glass, promoting uniformity and bubble removal.
It improves the chemical and temperature uniformity of molten glass, promotes the removal of bubbles, enhances the quality and performance of glass products, reduces the labor intensity of workers, and increases production efficiency.
Smart Images

Figure CN223607158U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the field of glass smelting relates to a kind of carrier plate glass smelting device. BACKGROUND
[0002] Glass smelting is a complex process including physical, chemical and physical and chemical phenomena, these phenomena and reactions make the mechanical mixture of raw materials into molten glass liquid, and the smelting process is usually divided into five stages of silicate formation, glass formation, refining, homogenization and cooling, each stage influences each other, and is crucial to the quality of final product.
[0003] For example, the glass smelting device provided in the patent No. CN207918667U includes a furnace body, a heating element and a material melting cavity. The heating element and the material melting cavity are arranged inside the furnace body, and the heating element heats the material melting cavity. The furnace body also has a partition inside, which divides the furnace body into upper and lower parts. The material melting cavity includes a first material melting cavity and a second material melting cavity that are connected to each other. The first material melting cavity is located in the upper part of the furnace body, and the second material melting cavity is located in the lower part of the furnace body. The heating temperature of the first material melting cavity is lower than that of the second material melting cavity. The top of the furnace body is provided with a feeding hopper, and the discharge port of the feeding hopper is located inside the furnace body and corresponds to the inlet of the first material melting cavity. The outlet of the second material melting cavity is located at the bottom of the furnace body and extends to the outside of the furnace body. The utility model effectively solves the problem of severe volatilization of volatile components in high-temperature glass melt during the smelting process of the existing glass smelting device.
[0004] The existing technology has the following technical defects:
[0005] Although the above-mentioned device effectively solves the problem of severe volatilization of volatile components in high-temperature glass melt during the smelting process of the existing glass smelting device, it is not convenient to stir the glass during smelting, which can cause the bubbles generated in the smelting liquid to be effectively discharged, thereby affecting the quality of glass processing. INVENTION CONTENTS
[0006] The technical problem to be solved by the utility model is to overcome the shortcomings of the prior art and provide a carrier plate glass smelting device.
[0007] The utility model discloses a bottom plate, bottom plate upper portion fixedly connected with heating shell, heating shell inner chamber fixedly connected with heating rod, heating shell inner chamber is provided with jar, jar upper portion is provided with stirring subassembly, is provided with adjusting assembly on stirring subassembly, adjusting assembly includes frame, frame rear side fixedly connected with first motor, first motor output shaft fixedly connected with eccentric wheel, eccentric wheel lower part swing joint has driving wheel, driving wheel lower part fixedly connected with moving plate, moving plate lower part both sides are fixedly connected with moving rod, and hollow column slidingly connected with moving rod lower part is fixedly connected with spring in hollow column inner chamber, and moving rod lower part swing joint, and hollow column lower part is fixedly connected with frame.
[0008] The frame lower part is fixedly connected with the bottom plate upper part, the eccentric wheel is arranged in the frame inner chamber, and the moving rod is slidably arranged in the hollow column inner chamber.
[0009] The stirring subassembly includes a second motor, the second motor is fixedly connected with the moving plate, the second motor output shaft passes through the moving plate, the second motor output shaft is fixedly connected with the stirring rod, and the stirring rod is arranged in the jar inner chamber.
[0010] The bottom plate lower part four corners are respectively hinged with universal wheels, and the bottom plate lower part both sides are respectively fixedly connected with telescopic fixed feet.
[0011] The jar lower part is communicated with a discharging pipe, and the discharging pipe surface is fixedly connected with a valve.
[0012] The jar upper part is communicated with a pipeline, and the pipeline upper part is fixedly connected with a collection box.
[0013] Compared with the prior art, the device can divide the uneven area in the glass liquid into short stripes, increase the contact area, promote mutual dissolution and diffusion, make the stripes gradually disappear, improve the chemical uniformity and temperature uniformity of the glass liquid, promote the discharge of bubbles, make the melt more uniform, improve the quality and performance of the glass product, reduce the labor intensity of workers, improve the production efficiency, and ensure the stability of product quality. ACCURACY OF DRAWINGS
[0014] Fig. 1 It is one of the structure schematic diagram of the utility model,
[0015] Fig. 2 It is the second structure schematic diagram of the utility model,
[0016] Fig. 3 It is the exploded structure schematic diagram of the utility model,
[0017] Fig. 4 It is the heating shell structure schematic diagram of the utility model.
[0018] In the figure: 1, the base plate; 2, heating shell; 3, heating rod; 4, tank body; 5, frame; 6, the first motor; 7, eccentric wheel; 8, drive wheel; 9, moving plate; 10, moving rod; 11, hollow column; 12, spring; 13, the second motor; 14, stirring rod; 15, universal wheel; 16, telescopic fixed foot; 17, blanking pipe; 18, valve; 19, pipeline; 20, collection box. DETAILED DESCRIPTION
[0019] Example 1
[0020] As Figs. 1-4 shown, the utility model includes base plate 1, the upper portion fixedly connected with heating shell 2 of base plate 1, the inner chamber fixedly connected with heating rod 3 of heating shell 2, be provided with tank body 4 in the inner chamber of heating shell 2, be provided with stirring assembly on the upper portion of tank body 4, be provided with adjusting assembly on stirring assembly, adjusting assembly includes frame 5, the rear side fixedly connected with first motor 6 of frame 5, the output shaft fixedly connected with eccentric wheel 7 of first motor 6, the lower portion movably connected with drive wheel 8 of eccentric wheel 7, the lower portion fixedly connected with moving plate 9 of drive wheel 8, the lower portion both sides fixedly connected with moving rod 10 of moving plate 9, the lower portion slidingly connected with hollow column 11 of moving rod 10, the inner chamber fixedly connected with spring 12 of hollow column 11, the lower portion movably connected with moving rod 10 of spring 12 upper portion, the lower portion with frame 5 of hollow column 11 is fixedly connected, eccentric wheel 7 is arranged in the inner chamber of frame 5, moving rod 10 is slidably arranged in the inner chamber of hollow column 11, the stirring assembly includes the second motor 13 of the lower portion fixedly connected with moving plate 9 of second motor 13, the output shaft of second motor 13 passes through moving plate 9, the output shaft fixedly connected with stirring rod 14 of second motor 13, stirring rod 14 is arranged in the inner chamber of tank body 4, the lower portion four corners of base plate 1 are hingedly connected with universal wheel 15, the lower portion both sides fixedly connected with telescopic fixed foot 16 of base plate 1, the lower portion of tank body 4 is communicated with blanking pipe 17, and the surface fixedly connected with valve 18 of blanking pipe 17, the upper portion of tank body 4 is communicated with pipeline 19, and the upper portion fixedly connected with collection box 20 of pipeline 19.
[0021] Working process or working principle: move the equipment to the designated position, start the telescopic fixing foot 16 to fix the whole equipment, power on each electronic element on the equipment, then put the glass raw material to be smelted into the collecting box 20, then transport the raw material to the inside of the tank body 4 through the pipeline 19, then start the heating rod 3 to heat the raw material, then start the second motor 13 to drive the stirring rod 14 to rotate, then stir the glass liquid after heating and smelting by the stirring rod 14, then start the first motor 6 to drive the eccentric wheel 7 to rotate, then drive the driving wheel 8 to move by the eccentric wheel 7, then drive the moving plate 9 to move by the driving wheel 8, when the moving plate 9 moves, drive the moving rod 10 to move, then compress the spring 12 by the moving rod 10, when the moving rod 10 moves, limit the moving direction of the moving rod 10 by the hollow column 11, then drive the moving rod 10 to move by the spring 12 rebound, then drive the moving plate 9 to move by the moving rod 10, then drive the second motor 13 to move up and down by the moving plate 9, so that the stirring rod 14 moves up and down in the tank body 4, thereby improving the stirring efficiency, after smelting is completed, start the valve 18 to transport the stirring liquid to the outside of the equipment through the discharging pipe 17.
[0022] In the utility model, the description of the structure direction and relative position relation, such as before and after, left and right, up and down, does not constitute the limitation to the utility model, and is only convenient for description.
Claims
1. A carrier glass melting apparatus, characterized by: The utility model relates to a heating device for the preparation of food, including the bottom plate (1), the bottom plate (1) upper fixed connection has the heating shell (2), the heating shell (2) inner chamber fixed connection has the heating rod (3), the heating shell (2) inner chamber is provided with the jar (4), the jar (4) upper portion is provided with the stirring subassembly, is provided with the adjusting assembly on the stirring subassembly, the adjusting assembly includes the frame (5), the frame (5) rear side fixed connection has the first motor (6), the first motor (6) output shaft fixed connection has the eccentric wheel (7), the eccentric wheel (7) lower part swing connection has the drive wheel (8), the drive wheel (8) lower part fixed connection has the moving plate (9), the moving plate (9) lower part both sides are fixedly connected with the moving rod (10), the moving rod (10) lower part sliding connection has the hollow column (11), the hollow column (11) inner chamber fixed connection has the spring (12), the spring (12) upper part and the moving rod (10) lower part swing connection, the hollow column (11) lower part and the frame (5) fixed connection.
2. The carrier glass melting apparatus of claim 1, wherein: The frame (5) lower part is fixedly connected with the upper part of the bottom plate (1), the eccentric wheel (7) is arranged in the inner cavity of the frame (5), and the moving rod (10) is slidably arranged in the inner cavity of the hollow column (11).
3. The carrier glass melting apparatus of claim 2, wherein: The stirring subassembly includes a second motor (13), the second motor (13) is fixedly connected with the moving plate (9), the output shaft of the second motor (13) penetrates the moving plate (9), the output shaft of the second motor (13) is fixedly connected with the stirring rod (14), and the stirring rod (14) is arranged in the inner cavity of the jar (4).
4. The carrier glass melting apparatus of claim 3, wherein: The bottom plate (1) is hingedly connected with universal wheels (15) at the lower four corners, and the bottom plate (1) is fixedly connected with telescopic fixing feet (16) at the lower two sides.
5. The carrier glass melting apparatus of claim 1, wherein: The jar (4) is communicated with a discharge pipe (17) at the lower part, and the discharge pipe (17) is fixedly connected with a valve (18) on the surface.
6. The carrier glass melting apparatus of claim 5, wherein: The jar (4) is communicated with a pipeline (19) at the upper part, and the pipeline (19) is fixedly connected with a collection box (20) at the upper part.
Citation Information
Patent Citations
Glass melting device
CN207918667U